Development of a one-dimensional code for the initial design of a micro gas turbine compressor stage

Date
2020-12
Journal Title
Journal ISSN
Volume Title
Publisher
Stellenbosch : Stellenbosch University
Abstract
ENGLISH ABSTRACT: The use of micro gas turbines for once-off and often unique applications means that a generic, rapid turnaround design and performance evaluation process is required. This thesis aims at developing an application based One Dimensional (1D) design and flow analysis program to be used as an initial design tool for radial and mixed flow compressors. The application was developed in MATLABĀ®. The code is primarily based on the mean line flow and loss models developed by Aungier (2000). For verification, 18 test compressors were developed using the 1D Application (App). These test compressors cover a wide range of design velocities, mass flow rates, as well as meridional exit angles (mixed flow compressors). Predicted performance results were validated using Numeca/FINEā„¢ Turbo software. Initial comparisons between 1D and CFD results did not match very well. The 1D software generally over-predicted compressor performance, i.e. total-to-total efficiency and pressure ratio. The 1D software further provided fairly poor compressor choke prediction. Consequently, empirical models to correct these deviations were derived and implemented into the 1D software. Following these corrections, the results predicted by the modified 1D application compared well with the CFD results obtained. Initial 1D mean line results presented a mean choke prediction difference of 14.98% for the 18 test compressors, with a maximum difference of 39.88%. In the updated 1D App code the mean difference was reduced to 1.59% with a maximum difference of 4.97%. Initial 1D mean line results presented a mean total-to-total pressure ratio prediction difference of 9.31%, with a maximum difference of 17.27%. In the updated 1D App code the mean difference was reduced to 1.24% with a maximum difference of 5.01%. Total-to-total efficiency predicted by the initial 1D mean line code presented a mean difference of 11.23%, with a maximum difference of 15.09%. In the updated 1D App code the mean difference was reduced to 0.74% with a maximum difference of 1.57%. As a final means of validation, two more test compressors were designed using the 1D App. Performance results compared well with the CFD results.
AFRIKAANSE OPSOMMING: Die eenmalige en soms unieke gebruik en aanwending van mikro gasturbine enjins vereis dikwels ā€˜n generiese en spoedige ontwerps en werkverrigting evaluasie proses. Hierdie tesis beoog om ā€˜n toepassings gebaseerde Een Dimensionele (1D) ontwerps en vloei analise kode te ontwikkel wat sal dien as ā€˜n aanvanklike hulpmiddel vir die ontwerp van radiale en gemengde vloei kompressors. Die toepassing is in MATLABĀ® ontwikkel. Die kode is primĆŖr gebaseer op Aungier (2000) se 1D vloei en verlies modelle. Die 1D Toepassing (Toep) is gebruik om 18 toets kompressors te ontwerp wat sou dien as bewys van konsep. Hierdie 18 toets kompressors is ontwikkel om ā€˜n wye verskeidenheid ontwerps snelhede, massavloeitempos en meridionale uitlaat hoeke (gemengde vloei kompressors) te dek. Voorspelde resultate is geverifieer deur gebruik te maak van Numeca/FINEā„¢ Turbo. Aanvanklike vergelykings tussen die 1D en Berekenings Vloeimeganika (BVM) resultate het nie goed ooreengestem nie. Die aanvanklike 1D sagteware het die kompressor werkverrigting (totaal-tot-totale isentropiese doeltreffendheid en drukverhouding) oor die algemeen te hoog voorspel. Die aanvanklike 1D sagteware het verder gebrekkige wurging voorspelling verskaf. Daarom is empiriese modelle afgelei om hierdie afwykings te kwantifiseer en korrigeer. Hierdie korreksies is in die 1D Toepassing kode geĆÆmplimenteer. Die opgedateerde 1D Toepassing kode het resultate tot gevolg gehad wat goed ooreengestem het met die BVM resultate. Aanvanklike 1D kode wurgings resultate het ā€˜n gemiddelde afwyking met betrekking tot BVM resultate getoon van 14.98% vir die 18 toets kompressors, met ā€˜n maksimum afwyking van 39.88%. Hierdie afwyking is met die opgedateerde 1D Toepassing verlaag tot ā€˜n gemiddelde van 1.59% met ā€˜n maksimum afwyking van 4.97%. Die aanvanklike 1D kode het verder ā€˜n gemiddelde totaal-tot-totale drukverhouding afwyking getoon van 9.31% met ā€˜n maksimum afwyking van 17.27%. Die opgedateerde 1D Toepassing kode het hiedie afwyking verlaag tot ā€˜n gemiddelde waarde van 1.24% met ā€˜n maksimum verskil van 5.01%. Die aanvanklike 1D kode het ā€˜n gemiddelde totaal-tot-totale isentropiese doeltreffendheid afwyking getoon van 11.23% met ā€˜n maksimum afwyking van 15.09%. Die opgedateerde 1D Toepassing kode het hierdie afwyking verlaag tot ā€˜n gemiddelde waarde van 0.74% met ā€˜n maksimum verskil van 1.57%. As finale validasie is twee addisionele toets kompressors ontwerp met behulp van die 1D Toepassing. Die werksverrigting resultate van hierdie twee kompressors het goed ooreengestem met die toepaslike BVM resultate.
Description
Thesis (MEng)--Stellenbosch University, 2020.
Keywords
Mixed Flow Impeller, Crossover Diffuser, Compressors -- Valuation, UCTD, Gas-turbines, One-dimensional flow
Citation